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Non-Fragile H_∞ Filter Design for Uncertain Stochastic Nonlinear Time-Delay Markovian Jump Systems

机译:不确定随机非线性时滞马尔可夫跳跃系统的非脆弱H_∞滤波器设计

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摘要

This paper investigates the problem of non-fragile and mode-dependent H_∞ filter design for a class of nonlinear stochastic Markovian jump systems with mode-dependent time-varying delays and norm-bounded parameter uncertainties. The non-fragile and mode-dependent filter to be designed is assumed to include multiplicative gain variations which result from inaccuracies in filter implementation, and the desired filter ensures the filtering error system is not only exponentially mean-square stable, but also satisfies a prescribed H_∞-norm level for all admissible uncertainties. A stochastic Lyapunov-Krasovskii function is proposed to reflect the information of Markovian jump modes and the mode-dependent time-varying delays, and a set of strict linear matrix inequalities are utilized to derive sufficient conditions that guarantee the desired filter can be constructed. A numerical example and a vertical take-off and landing (VTOL) helicopter system are utilized to illustrate the effectiveness and usefulness of the main results obtained.
机译:本文研究了一类具有与模式有关的时变时滞和范数有界参数不确定性的非线性随机Markovian跳跃系统的非脆弱和与模式有关的H_∞滤波器设计问题。假定要设计的非脆弱和依赖于模式的滤波器包括因滤波器实现不准确而导致的乘法增益变化,并且所需的滤波器可确保滤波误差系统不仅指数均方稳定,而且满足规定所有可接受的不确定性的H_∞-范数水平。提出了一种随机的Lyapunov-Krasovskii函数来反映Markovian跳跃模态和与模态有关的时变时延的信息,并利用一组严格的线性矩阵不等式来导出足够的条件,以保证可以构建所需的滤波器。数值例子和垂直起降直升机系统被用来说明所获得主要结果的有效性和实用性。

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